Literature DB >> 32974659

Pulmonary hypertension after pneumonectomy: a preclinical model in rats and human pulmonary endothelial cells.

Pierre Sentenac1,2, Gianluca Samarani1,2, Patrice Bideaux1, Pierre Sicard1, Benjamin Bourdois1,2, Sylvain Richard1, Pascal H Colson2, Saadia Eddahibi1.   

Abstract

OBJECTIVES: Pulmonary hypertension and heart disease contribute to the high morbidity rate following pneumonectomy (PN). The pathophysiology is still poorly understood. The objective was to investigate the consequences of PN on cardiopulmonary function in rats and to explore in vitro the involved mechanisms.
METHODS: Sixty Sprague-Dawley male rats randomly underwent either a right PN (PN group) or sham surgery. Ten rats per group were sacrificed on postoperative days 3, 7 and 28. Cardiopulmonary alterations were investigated by echocardiographic, haemodynamic and histological analyses. In vitro, the shear stress was reproduced using a Flexcell Tension™ cyclic stretch on cultured human pulmonary endothelial cells (P-ECs) to investigate the impact on pulmonary artery smooth muscle cell (PA-SMC) growth. Data are expressed as mean ± SD.
RESULTS: Mean pulmonary arterial pressure gradually increased in the PN group to reach 35 ± 7 mmHg on postoperative day 28 vs 18 ± 4 in sham (P = 0.001), likewise the proportion of muscularized distal pulmonary arteries, 83 ± 1% vs 5 ± 1%, respectively (P < 0.001), related to in situ PA-SMC proliferation. The right ventricle area and lateral wall thickness were doubled in the PN group on postoperative day 28. The left ventricle ejection fraction decreased on postoperative days 7 and 28 while the right ventricle function was maintained. In vitro, the human PA-SMC growth was significantly greater when seeded with stretched vs non-stretched P-EC media, highlighting the role of shear stress on the P-EC paracrine function.
CONCLUSIONS: Right PN led to pulmonary hypertension and proportional right heart remodelling in rats. The shear stress related to high blood flow alters the pulmonary endothelial paracrine control of SMC growth.
© The Author(s) 2020. Published by Oxford University Press on behalf of the European Association for Cardio-Thoracic Surgery. All rights reserved.

Entities:  

Keywords:  Animal; Endothelial cells; Growth factors; Models; Pneumonectomy; Pulmonary heart disease; Pulmonary hypertension

Year:  2021        PMID: 32974659     DOI: 10.1093/ejcts/ezaa277

Source DB:  PubMed          Journal:  Eur J Cardiothorac Surg        ISSN: 1010-7940            Impact factor:   4.191


  1 in total

1.  Experimental animal models of pulmonary hypertension: Development and challenges.

Authors:  Xiao-Han Wu; Jie-Ling Ma; Dong Ding; Yue-Jiao Ma; Yun-Peng Wei; Zhi-Cheng Jing
Journal:  Animal Model Exp Med       Date:  2022-03-25
  1 in total

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